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Sulfur-Doped g-C_3N_4 with Enhanced Visible-Light Photocatalytic Activity

机译:硫掺杂G-C_3N_4具有增强的可见光光催化活性

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The S-doped g-C_3N_4 materials were prepared by heating mixtures of urea and thiourea with various weight ratios at 550°C, and denoted as x:y SCN, where x:y is weight ratios of urea to thiourea. The obtained samples were characterized by X-ray diffraction, diffuse reflectance ultraviolet-visible spectroscopy, X-ray photoelectron spectroscopy, thermogravimetric differential thermal analysis, scanning electron microscopy and infrared spectra. The results showed that all the x:y SCN materials exhibit the presence of doping S in the structure of g-C_3N_4 and higher capability in the photodegradation of Rhodamin B in aqueous solution under visible light condition than pure g-C_3N_4. Among the SCN samples, 75:25 SCN performed the highest photocatalytic activity, which is believed the presence of the largest amount of doping S in the matrix of g-C_3N_4, leading to reduction of their bandgap. The reduction of bandgap for S-doped g-C_3N_4 materials compared to pure g-C_3N_4 was proved by theoretical calculation.
机译:通过在550℃下加热尿素和硫脲的混合物来制备S掺杂的G-C_3N_4材料,并表示为X:Y SCN,其中X:Y是硫脲的重量比。通过X射线衍射,散射反射率紫外 - 可见光谱,X射线光电子体光谱,热重分差异热分析,扫描电子显微镜和红外光谱。结果表明,所有X:Y SCN材料在G-C_3N_4的结构中表现出掺杂的掺杂S和在比纯G-C_3N_4的可见光条件下的水溶液中的罗丹明蛋白B的光降解中的较高能力。在SCN样品中,75:25 SCN进行了最高的光催化活性,这被认为是G-C_3N_4基质中最大掺杂S的存在,从而降低其带隙。通过理论计算证明了与纯G-C_3N_4相比的S掺杂G-C_3N_4材料的带隙的减少。

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